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Mode III fracture of a magnetoelectroelastic layer: exact solution and discussion of the crack face electromagnetic boundary conditions

机译:磁电弹性层的III型断裂:裂纹面电磁边界条件的精确解和讨论

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摘要

This paper develops a closed-form solution for anti-plane mechanical and in plane electric and magnetic fields in a magnetoelectroelastic layer of finite thickness. Explicit expressions for the stresses, electric fields, and magnetic fields, together with their intensity factors are obtained for the extreme cases for impermeable and permeable cracks. Solutions for some special cases, such as a magnetoelectroelastic layer with infinite thickness, are also obtained. Applicability of the crack face electromagnetic boundary conditions is discussed. It is found that the crack profile is important in obtaining the correct electromagnetic fields and their intensity factors. The stress intensity factor, however, does not depend on the crack face electromagnetic boundary condition assumptions.
机译:本文针对有限厚度的磁电弹性层中的反平面机械以及平面电场和磁场提出了一种封闭形式的解决方案。对于不可渗透和可渗透裂缝的极端情况,可以获得应力,电场和磁场及其强度因子的显式表达式。还获得了一些特殊情况的解决方案,例如具有无限厚度的磁电弹性层。讨论了裂纹面电磁边界条件的适用性。发现裂纹轮廓对于获得正确的电磁场及其强度因子很重要。但是,应力强度因子并不取决于裂纹面电磁边界条件的假设。

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